A. De Kock et al., The effect of multivalent cation dopants on lithium manganese spinel catodes, Journal of Power Sources 70 (1998) pp. 247-252, (no month). |
Improved Capacity Retention In Rechargeable 4V Lithium/Lithium-Manganese Oxide (Spinel) Cells, R. J. Gummow et al., Solid State Ionics 69 (1994) no month. |
The Spinel Phase of LiMn2O4 As a Cathode in Secondary Lithium Cells, J. M. Tarascon et al., J. Electrochem. Soc. vol. 138, No. 10, Oct. 1991 pp. 2859-2864. |
Ambient and High-Pressure Structures of LiMnVo4 and Its Mn3+/Mn2+ Redox Energy, A. K. Padhi et al., Journal of Solid State Chemistry 128 (1997), pp. 267-272 no month. |
Preparation and Electrochemical Investigation of LiMn1.5Me0.5OA(Me:Ni,Fe) Cathode Materials for Secondary Lithium Batteries, K. Amine et al., pp. 472-473. |
D. Gryffroy and R.E. Vandenberghe, Cation distribution, cluster structure and ionic ordering of the spinel series lithium nickel manganese titanium oxide (Linio.5Mn1.5-xTixO4) and lithium nickel magnesium manganese oxide (LiNi0.5-vMgyMn1.504): J. Phys. Chem. Solids (1992), 53(6), 777-84 (Abstract only), no month. |
D. Gryffroy; R.E. Vandenberghe; and D. Poelman; Optical absorption of nickel (Ni2+ (d8)) and manganese (Mn4+(d3)) in some spinel oxides; Solid State Commun. (1992), 82(7), 497-500 (Abstract only), no month. |
D.G. Wickham and W.J. Croft; Crystallographic and Magnetic Properties of Several Spinels Containing Trivalent JA-1044 Manganese; J. Phys. Chem. Solids; Pergamon Press 1958, vol. 7, pp. 351-360, no month. |
Young-II Jang, Biying Huang Yet-Ming Chiang and Donald R. Sadoway; Stabilization of LiMnO2 in the α-NaFeO2 Structure Type by LiAIO2 Addition; Electrochemical and Solid-State Letters; 1 (1) 13-16 (1998). |
J.N. Reimers, E. Rossen, C.D. Jones and J.R. Dahn: Structure and electrochemistry of LixFeyNil-yO2; Solid State Ionics 61, pp. 335-344 (1993). |
Preparation and Electrochemical Investigation of LiMn2-xMexO4 (Me:Ni,Fe, and x=0.5,1) Cathode Materials for Secondary Lithium Batteries, K. Amine et al., Journal of Power Sources 68 (1997) pp. 604-608 (no month). |
Doped Li-Mn Spinels: Physical/Chemical Characteristics and Electrochemical Performance in Li Batteries, G. Pistoia et al., Chem. Mater. 9 (1997) , pp. 1443-1450 (no month). |
Valence Analysis of Transition Metal Ions in Spinel LiMnMO4(M=Ti, Cr, Mn, Co) By Electron Energy Loss Spectroscopy, S. Suzuki et al., J. Phys. Chem. Solids vol. 57, No. 12, (1996) pp. 1851-1856 (no month). |
Thermal Stability of LixCoO2, LixNiO2 and λ-MnO2 and Consequences For the Safety of Li-ion Cells, J. R. Dahn et al., Solid State Ionics 69 (1994), pp. 265-270 (no month). |
Synthesis and Characterization of LiAl1/4Ni3/4O2 (R3m) for Lithium-Ion (Shuttlecock) Batteries, T. Ohzuku et al., J. Electrochem. Soc., vol. 142, No. 12, Dec. 1995, pp. 4033-4039. |
Structure and Electrochemistry of LixMnyNil-yO2, E. Rossen et al., Solid State Ionics 57, (1992), pp. 311-318 (no month). |
Lithium Manganese Cobalt Spinel Cathode for 4V Lithium Batteries, B. Banov et al., 8th International Meeting on Lithium Batteries, Jun., 1996, pp. 452-453. |
Chemically Desodiated Thiochromites as Cathode Materials in Secondary Lithium Cells, R. Moshtev et al., Journal of Power Sources, 26 (1989) pp. 285-292 (no month). |